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Towards a model of full-sky Galactic synchrotron intensity and linear polarisation: a re-analysis of the Parkes data

机译:建立全天空银河同步加速器强度和线性极化的模型:Parkes数据的重新分析

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摘要

We have analysed the angular power spectra of the Parkes radio continuum and polarisation survey of the Southern galactic plane at 2.4 GHz. We have found that in the multipole range l=40-250 the angular power spectrum of the polarised intensity is well described by a power-law spectrum with fitted spectral index alpha_L = 2.37 +- 0.21. In the same multipole range the angular power spectra of the E and B components of the polarised signal are significantly flatter, with fitted spectral indices respectively of alpha_E = 1.57 +- 0.12 and alpha_B = 1.45 +- 0.12. Temperature fluctuations in the E and B components are mostly determined by variations in polarisation angle. We have combined these results with other data from available radio surveys in order to produce a full-sky toy model of Galactic synchrotron intensity and linear polarisation at high frequencies (> 10 GHz). This can be used to study the feasibility of measuring the Cosmic Microwave Background polarisation with forthcoming experiments and satellite missions.
机译:我们已经分析了Parkes无线电连续体的角功率谱和2.4 GHz的南银河平面的极化测量。我们已经发现,在多极范围l = 40-250中,偏振强度的角功率谱很好地由具有拟合的光谱指数α_L= 2.37±0.21的幂律谱描述。在相同的多极范围内,偏振信号的E和B分量的角功率谱显着平坦,拟合的光谱指数分别为alpha_E = 1.57±0.12和alpha_B = 1.45±0.12。 E和B分量中的温度波动主要由极化角的变化确定。我们将这些结果与来自可用无线电调查的其他数据相结合,以生成在高频(> 10 GHz)下银河同步加速器强度和线性极化的全天候玩具模型。这可用于研究通过即将进行的实验和卫星任务测量宇宙微波背景极化的可行性。

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